Department of Chemistry, Center for Micro/Nano Science and Technology and Advanced Optoelectronic Technology Center, National Cheng Kung University , Tainan 701, Taiwan.
ACS Nano. 2015 Dec 22;9(12):12283-91. doi: 10.1021/acsnano.5b05563. Epub 2015 Nov 18.
Bimetallic nanostructures show exciting potential as materials for effective photothermal hyperthermia therapy. We report the seed-mediated synthesis of palladium-gold (Pd-Au) nanostructures containing multiple gold nanocrystals on highly branched palladium seeds. The nanostructures were synthesized via the addition of a gold precursor to a palladium seed solution in the presence of oleylamine, which acts as both a reducing and a stabilizing agent. The interaction and the electronic coupling between gold nanocrystals and between palladium and gold broadened and red-shifted the localized surface plasmon resonance absorption maximum of the gold nanocrystals into the near-infrared region, to give enhanced suitability for photothermal hyperthermia therapy. Pd-Au heterostructures irradiated with an 808 nm laser light caused destruction of HeLa cancer cells in vitro, as well as complete destruction of tumor xenographs in mouse models in vivo for effective photothermal hyperthermia.
双金属纳米结构作为有效的光热热疗材料显示出令人兴奋的潜力。我们报告了一种在高度支化钯种子上包含多个金纳米晶体的钯金(Pd-Au)纳米结构的种子介导合成。通过在油酸胺存在下将金前体添加到钯种子溶液中,合成了纳米结构,油酸胺既是还原剂又是稳定剂。金纳米晶体之间以及钯和金之间的相互作用和电子耦合,将金纳米晶体的局域表面等离子体共振吸收最大值扩展并红移到近红外区域,从而更适合光热热疗。用 808nm 激光照射 Pd-Au 异质结构,导致体外 HeLa 癌细胞的破坏,以及体内小鼠模型中肿瘤异种移植物的完全破坏,实现了有效的光热热疗。